CFSYS filaments
CFSYS continuous fiber composites
CCF/PPS
Tensile strength: 850 MPa
HDT: 170 °C
This material is optimized for harsh environments and is characterized by excellent heat resistance (over 200 °C) and chemical corrosion resistance. Thanks to its high rigidity and creep resistance, it is ideal for high-temperature and heavy-duty components such as pump valves and electronic insulation.
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CCF/PEEK
Tensile strength: 880 MPa
HDT: 220 °C
Developed for extreme environments. This high-performance material is characterized by excellent thermal stability (>250 °C), exceptional corrosion resistance and outstanding mechanical properties – while being lightweight and biocompatible for critical aerospace and medical applications.
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CCF/PA
Tensile strength: 810 MPa
Flexural strength: 470 MPa
Density: 0.13 g/cm³
This is a classic continuous fiber FDM 3D printing material that combines light weight and high strength with easy processability. It retains the low moisture absorption and wear resistance of PA, offers good impact resistance and can replace metals in medium-strength applications such as automotive parts and industrial components.
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PET-CF
Tensile strength: 75 MPa
Density: 1.10/cm³
This material has a carbon fibre mesh skeleton for improved strength and heat resistance and minimizes deformation through internal stress relief. The structured PET matrix offers strong mechanical properties with low deformation. The uniform fiber distribution ensures dimensional stability and wide usability.
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CIRON®
Tensile strength: 70 MPa
Density: 1.09/cm³
This material was specially developed for FDM 3D printing and is ideal as a base for continuous fibers. It combines low density, minimal moisture absorption, high strength, wear resistance and exceptional chemical and heat resistance. The material ensures dimensional stability during the printing process without warping or shrinking.
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PAHT-CF
Tensile strength: 100 MPa
Density: 1.15/cm³
This high-temperature nylon-based material is characterized by low moisture absorption, high strength, excellent wear and chemical resistance and outstanding heat resistance. It ensures dimensional stability without warping or shrinking and is compatible with easily removable support materials to avoid poor surface finish on complex models with overhangs.
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ABS
Tensile strength: 40 MPa
Density: 1.05 g/cm³
This material offers excellent surface quality, low cost and easy processing with good toughness and impact resistance. It is ideal for everyday components, but has limited weather resistance, tends to warp and offers moderate strength.
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ASA
Tensile strength: 40 MPa
Density: 1.07 g/cm³
This material is optimized for outdoor and industrial use and features excellent weathering and UV resistance. While it requires printing at high temperatures and dry storage, its exceptional stability and long service life make it a first-class technical choice that outperforms ABS in prolonged exposure to sunlight.
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PA
Tensile strength: 60 MPa
Density: 1.10 g/cm³
This cost-effective material offers good toughness, impact resistance and ease of processing. Although its strength and stiffness are moderate and it can absorb moisture and deform over time, it is suitable for everyday components and low-stress applications such as gears.
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PC
Tensile strength: 60 MPa
Density: 1.20 g/cm³
This material offers excellent light transmission and high impact resistance with good weather resistance. Although its heat resistance is moderate and it is prone to stress cracking, it is well suited for housings and transparent components that require both robustness and clarity.
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PETG
Hardness: 95-100A
Density: 1.20 g/cm³
This material is easy to print, has excellent moldability and a smooth surface with good light transmission. It is resistant to chemical corrosion, remains flexible without brittle fractures and is cost-effective – ideal for consumer goods and packaging where appearance and processability are important, although it has only moderate strength and heat resistance.
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TPU-Aero
Hardness: 65-85A
Density: 0.55-0.95 g/cm³
This medium-hard, actively foaming, flexible material enables controlled expansion over the printing temperature, allowing adjustable weight reduction and softness to be achieved. With a surface hardness of 65-85A, it achieves a weight saving of up to 50% compared to standard TPU at maximum expansion, while offering an excellent, fabric-like surface texture.
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